[氧化应激对HepG2人肝癌细胞补体C3基因的调控]。

Q3 Medicine
A V Babina, V S Shavva, A V Lisunov, G N Oleinikova, E E Larionova, A A Dmitrieva, E V Nekrasova, S V Orlov
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引用次数: 0

摘要

在氧化应激过程中,活性氧和氮在细胞中积累,对各种细胞成分(包括DNA、蛋白质和脂质)造成氧化损伤,从而导致许多严重疾病,如动脉粥样硬化。蛋白质C3是补体级联反应的核心组成部分,在免疫系统中起着关键作用。C3的促炎活性也有助于代谢综合征的发展。虽然肝细胞是血液中C3循环的主要来源,但氧化应激下肝细胞中C3基因表达的调控尚不清楚。过氧化氢诱导HepG2人肝癌细胞氧化应激时,C3基因转录和C3蛋白分泌均受到抑制。转录因子FOXO1促进C3表达,氧化应激通过调节FOXO1/HNF4α复合物结合C3启动子介导C3抑制。在C3启动子的远端区域发现了一个新的FOXO1结合位点簇,并发现FOXO1/HNF4α复合物对C3表达的调节至关重要。主要MAP激酶级联反应(ERK1/2、p38和JNK)、AMP激酶和转录因子NF-κB的激活是氧化应激中C3抑制的必要条件。因此,研究人员确定了氧化应激下HepG2细胞C3生成抑制的分子机制和转录因子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Regulation of Complement C3 Gene in HepG2 Human Hepatoma Cells under Oxidative Stress].

Reactive oxygen and nitrogen species accumulate in cells during oxidative stress and cause oxidative damage to various cell components, including DNA, proteins, and lipids, thus leading to a number of severe diseases, such as atherosclerosis. Protein C3 is a central component of the complement cascade and a key player in the immune system. Proinflammatory activity of C3 can also contribute to the development of metabolic syndrome. Although hepatocytes are the main source of C3 circulating in the blood, the regulation of C3 gene expression in hepatocytes under oxidative stress remains unexplored. Suppression of C3 gene transcription and C3 protein secretion were observed during hydrogen peroxide-induced oxidative stress in HepG2 human hepatoma cells. The transcription factor FOXO1 promoted C3 expression, and C3 repression by oxidative stress was mediated through the regulation of FOXO1/HNF4α complex binding to the C3 promoter. A novel cluster of FOXO1 binding sites was identified in the distal region of the C3 promoter and found to be essential for the regulation of C3 expression by the FOXO1/HNF4α complex. Activation of the main MAP kinase cascades (ERK1/2, p38, and JNK), AMP kinase, and the transcription factor NF-κB were necessary for C3 suppression in oxidative stress. Thus, the molecular mechanisms and transcription factors that mediate suppression of C3 production in HepG2 cells during oxidative stress were identified.

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来源期刊
Molekulyarnaya Biologiya
Molekulyarnaya Biologiya Medicine-Medicine (all)
CiteScore
0.70
自引率
0.00%
发文量
131
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